Pottosin I I, Schönknecht G
Centro Universitario de Investigaciones Biomedicas, Universidad de Colima, 28047 Colima, Col., Mexico.
J Exp Bot. 2007;58(7):1559-69. doi: 10.1093/jxb/erm035. Epub 2007 Mar 12.
The central vacuole is the largest Ca2+ store in a mature plant cell. Ca2+ release from this store contributes to Ca2+-mediated intracellular signalling in a variety of physiological responses. However, the routes for vacuolar Ca2+ release are not well characterized. To date, at least two voltage-dependent and two ligand-gated Ca2+-permeable channels have been reported in plant vacuoles. However, the so-called VVCa (vacuolar voltage-gated Ca2+) channel most probably is not a separate channel but is identical to another voltage-dependent channel-the so-called SV (slow vacuolar) channel. Studies in the last few years have added a new dimension to our knowledge of SV channel-mediated ion transport and the mechanisms of its regulation by multiple natural factors. Recently, the SV channel was identified as the product of the TPC1 gene in Arabidopsis. In contrast, the TPC1 channel from other species was thought to be localized in the plasma membrane. A re-evaluation of this work under the assumption that the TPC1 channel is generally a vacuolar channel provides interesting insights into the physiological function of the TPC1/SV channel. Considerably less is known about vacuolar Ca2+ channels that are supposed to be activated by inositol 1,4,5-trisphosphate or cADP ribose. The major problems are controversial reports about functional characteristics, and a remarkable lack of homologues of animal ligand-gated Ca2+ channels in higher plants. To help understand Ca2+-mediated intracellular signalling in plant cells, a critical update of existing experimental evidence for vacuolar Ca2+ channels is presented.
中央液泡是成熟植物细胞中最大的Ca2+储存库。从这个储存库释放的Ca2+有助于多种生理反应中由Ca2+介导的细胞内信号传导。然而,液泡Ca2+释放的途径尚未得到很好的表征。迄今为止,在植物液泡中已报道了至少两种电压依赖性和两种配体门控的Ca2+通透通道。然而,所谓的VVCa(液泡电压门控Ca2+)通道很可能不是一个独立的通道,而是与另一个电压依赖性通道——所谓的SV(慢液泡)通道相同。过去几年的研究为我们对SV通道介导的离子转运及其受多种自然因素调控机制的认识增添了新的维度。最近,SV通道被鉴定为拟南芥中TPC1基因的产物。相比之下,来自其他物种的TPC1通道被认为定位于质膜。假设TPC1通道通常是液泡通道,对这项工作进行重新评估,为TPC1/SV通道的生理功能提供了有趣的见解。对于被认为由肌醇1,4,5-三磷酸或cADP核糖激活的液泡Ca2+通道,人们了解得要少得多。主要问题是关于功能特性的有争议的报道,以及高等植物中动物配体门控Ca2+通道的同源物明显缺乏。为了帮助理解植物细胞中由Ca2+介导的细胞内信号传导,本文对液泡Ca2+通道的现有实验证据进行了重要更新。